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首页> 外文期刊>Journal of mechanics in medicine and biology >A STUDY OF FLUID-MEMBRANE INTERACTIONS THAT LIMIT THE OUTPUT OF PERISTALTIC MICROPUMPS
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A STUDY OF FLUID-MEMBRANE INTERACTIONS THAT LIMIT THE OUTPUT OF PERISTALTIC MICROPUMPS

机译:限制蠕动微泵输出的液膜相互作用研究

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In many microfluidic devices, fluid flow is generated using micropumps like peristaltic micropumps. However the hydrodynamic performance of peristaltic micropumps has not been fully understood and furthermore the effect of dynamic interaction of pumping membrane and fluid flow has not been studied yet. To fill this gap, we studied the hydro-dynamic performance of a peristaltic micropump using a numerical model incorporating the fluid-solid interactions. The model consisted of 3 layers; the top layer was the flow channel of 10 mum high, the middle layer was the 5~30 mum thick pumping membrane and the bottom layer was the 3 or 5 pumping chambers. By applying a pumping sequence at a frequency between 16~166Hz, we calculated flow rate for at least 4 cycles and used the fourth or fifth cycle to evaluate the flow rate per a cycle. We found that the numerical model closely replicated the frequency vs. flow rate relationship of a peristaltic micropump as shown earlier in experimental models. We further found that the flow rate of a peristaltic micropump could be improved by increasing the number of pumping chambers or the thickness of pumping membrane.
机译:在许多微流体装置中,使用蠕动微泵等微泵来产生流体流。然而,蠕动微型泵的流体力学性能还没有被完全理解,此外,尚未研究泵送膜和流体流动的动态相互作用的影响。为了填补这一空白,我们使用结合了流固耦合的数值模型研究了蠕动微泵的水动力性能。该模型由3层组成;顶层是高10微米的流道,中间层是5〜30微米厚的抽水膜,底层是3或5个抽水室。通过应用频率在16〜166Hz之间的泵送序列,我们计算了至少4个循环的流量,并使用第四或第五个循环来评估每个循环的流量。我们发现,数值模型紧密地复制了蠕动微型泵的频率与流速之间的关系,如先前在实验模型中所示。我们进一步发现,蠕动微型泵的流速可以通过增加泵送室的数量或泵送膜的厚度来提高。

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